Laboratoire Kastler Brossel, Université Pierre et Marie Curie, École Normale Supérieure et CNRS, UPMC Case 74, 4 place Jussieu, 75252 Paris Cedex 05, France.
Phys Rev Lett. 2011 Sep 30;107(14):146402. doi: 10.1103/PhysRevLett.107.146402.
The dynamics of optical switching in semiconductor microcavities in the strong coupling regime is studied by using time- and spatially resolved spectroscopy. The switching is triggered by polarized short pulses which create spin bullets of high polariton density. The spin packets travel with speeds of the order of 10(6) m/s due to the ballistic propagation and drift of exciton polaritons from high to low density areas. The speed is controlled by the angle of incidence of the excitation beams, which changes the polariton group velocity.
通过时间和空间分辨光谱研究了半导体微腔中强耦合 regime 下的光学开关动力学。开关由极化短脉冲触发,这些短脉冲会产生高极化激元密度的自旋子弹。由于激子极化激元从高密度区域向低密度区域的弹道传播和漂移,自旋包的速度可达 10(6)m/s 左右。速度由激发光束的入射角控制,入射角会改变极化激元的群速度。